Patents by Inventor Paolo Angelini

Paolo Angelini has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20190324063
    Abstract: A sensor includes a first transistor including a first terminal and a second terminal defining a current path, and a first gate terminal configured to receive a drive signal. The sensor further includes a sensor circuit configured to generate a measurement signal indicative of a first current flowing through the first transistor. The sensor circuit includes a second transistor including a third terminal, a fourth terminal, and a second gate terminal. The third terminal is connected to the first terminal of the first transistor. The second gate terminal is configured to receive the drive signal. The second transistor is a scaled version of the first transistor. The sensor circuit further includes an operational amplifier, a variable current source, a current mirror, and a measurement circuit.
    Type: Application
    Filed: April 10, 2019
    Publication date: October 24, 2019
    Inventors: Roberto Pio Baorda, Stefano Ramorini, Paolo Angelini
  • Publication number: 20190107584
    Abstract: A Hall sensor compensation circuit includes an input node configured for receiving a bias signal for a Hall sensor. A bias node provides to the Hall sensor a compensated bias signal. A compensation network coupled between the input node and the bias node has a gain inversely proportional to Hall mobility, ?n?, wherein the Hall sensing signal is temperature-compensated.
    Type: Application
    Filed: October 2, 2018
    Publication date: April 11, 2019
    Applicant: STMicroelectronics S.r.l.
    Inventors: Roberto Pio BAORDA, Paolo ANGELINI
  • Publication number: 20180372809
    Abstract: Hall sensing signals are received in a spinning readout pattern of subsequent readout phases, wherein the pattern is cyclically repeated at a spinning frequency and a polarity of the Hall sensor signals is reversed in two non-adjacent readout phases of the readout pattern. A signal storage circuit includes signal storage capacitors. An accumulation circuit includes accumulation capacitors. A switch network is selectively actuated to couple the signal storage capacitors with the accumulation capacitors synchronously with phases in the spinning readout pattern in subsequent alternating first and second periods. The spinning output is stored with alternating opposite signs on the signal storage capacitors and the Hall sensing signals are stored in the signal storage capacitors and then accumulated on the accumulation capacitors with alternate signs in subsequent periods. The accumulated output signal is then demodulated with a demodulation frequency half the spinning frequency.
    Type: Application
    Filed: June 20, 2018
    Publication date: December 27, 2018
    Applicant: STMicroelectronics S.r.l.
    Inventors: Paolo ANGELINI, Roberto Pio BAORDA, Danilo Karim KADDOURI
  • Publication number: 20180372811
    Abstract: A compensation circuit receives a sensing signal from a Hall sensor and outputs a compensated Hall sensing signal. The compensation circuit has a gain that is inversely proportional to Hall sensor drift mobility. The compensated Hall sensing signal is temperature-compensated.
    Type: Application
    Filed: June 20, 2018
    Publication date: December 27, 2018
    Applicant: STMicroelectronics S.r.l.
    Inventors: Paolo ANGELINI, Roberto Pio BAORDA, Danilo Karim KADDOURI
  • Publication number: 20180335326
    Abstract: An integrated sensor device including a first die, housing a sensor element to detect a quantity external to the sensor device and transduce the external quantity into an electrical sensing signal; a second die mechanically coupled to the first die so that the first and second dies are stacked on one another along one and the same axis; and at least one heater of a resistive type integrated in the first die and/or in the second die, having a first conduction terminal and a second conduction terminal configured to couple respective first and second conduction terminals of a signal generator for causing an electric current to flow, in use, between the first and second conduction terminals of the heater and generate heat by the Joule effect. It is possible to carry out calibration in temperature of the sensor element.
    Type: Application
    Filed: July 30, 2018
    Publication date: November 22, 2018
    Inventors: Dario PACI, Francesco PROCOPIO, Carlo VALZASINA, Paolo ANGELINI, Francesco DIAZZI, Roberto Pio BAORDA, Danilo Karim KADDOURI
  • Publication number: 20180284919
    Abstract: A circuit includes a first transistor having a control terminal and a current path between first and second current path terminals. A second transistor has a control terminal and a current path between first and second current path terminals. The first current path terminal of the first transistor is coupled to the first current path terminal of the second transistor at an intermediate point. A first current buffer has an input and an output. The input of the first current buffer is coupled to the second current path terminal of the first transistor. A second current buffer has an input and an output, the input of the second current buffer being coupled to the second current path terminal of the second transistor. A summation node is coupled to the outputs of the first and second current buffer.
    Type: Application
    Filed: August 29, 2017
    Publication date: October 4, 2018
    Inventors: Danilo Karim Kaddouri, Roberto Pio Baorda, Paolo Angelini
  • Publication number: 20180284939
    Abstract: A differential current conveyor circuit includes two or more single-ended current conveyor stages and a common bias stage. First and second switches are set between the control terminals of the transistors in the common bias stage and a respective one of a first and a second coupling line of the single ended stages can be switched between the following: a reset state of the circuit with the transistors in the common bias stage coupled to the first and second coupling lines with the single-ended stages set to a bias condition; and a sensing state of the circuit with the transistors in the common bias stage decoupled from the first and second coupling lines, with the single-ended stages in a high impedance state with the control terminals of the input transistors of the single ended stages capacitively coupled to the input terminal.
    Type: Application
    Filed: October 30, 2017
    Publication date: October 4, 2018
    Inventors: Roberto Pio Baorda, Paolo Angelini, Danilo Karim Kaddouri
  • Patent number: 10054471
    Abstract: An integrated sensor device including a first die, housing a sensor element to detect a quantity external to the sensor device and transduce the external quantity into an electrical sensing signal; a second die mechanically coupled to the first die so that the first and second dies are stacked on one another along one and the same axis; and at least one heater of a resistive type integrated in the first die and/or in the second die, having a first conduction terminal and a second conduction terminal configured to couple respective first and second conduction terminals of a signal generator for causing an electric current to flow, in use, between the first and second conduction terminals of the heater and generate heat by the Joule effect. It is possible to carry out calibration in temperature of the sensor element.
    Type: Grant
    Filed: September 26, 2014
    Date of Patent: August 21, 2018
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Dario Paci, Francesco Procopio, Carlo Valzasina, Paolo Angelini, Francesco Diazzi, Roberto Pio Baorda, Danilo Karim Kaddouri
  • Publication number: 20180180649
    Abstract: An integrated current sensor device includes a supporting structure of conductive material, arranged within a package, and an integrated circuit die including a first and second magnetic-field sensor elements that are arranged along a sensor axis. An electronic circuit operatively coupled to the first and second magnetic-field sensor elements performs a differential detection of electric current. The supporting structure defines a current path for the electric current. The current path includes: a first path portion extending at the first magnetic-field sensor element; a second path portion extending at the second magnetic-field sensor element; and a third path portion that connects the first and second path portions. The first path portion and the second path portion are arranged on opposite sides of the sensor axis, and the third path portion crosses the sensor axis along a transverse axis.
    Type: Application
    Filed: May 4, 2017
    Publication date: June 28, 2018
    Applicant: STMicroelectronics S.r.l.
    Inventors: Dario Paci, Paolo Angelini, Marco Del Sarto
  • Patent number: 9523725
    Abstract: Capacitance sensing circuits and methods are provided. A dual mode capacitance sensing circuit includes a capacitance-to-voltage converter having an amplifier and an integration capacitance coupled between an output and an inverting input of the amplifier, and a switching circuit responsive to mutual mode control signals for a controlling signal supplied from a capacitive touch matrix to the capacitive to voltage converter in a mutual capacitance sensing mode and responsive to self mode control signals for controlling signals supplied from the capacitive touch matrix to the capacitance-to-voltage converter in a self capacitance sensing mode, wherein the capacitance sensing circuit is configurable for operation in the mutual capacitance sensing mode or the self capacitance sensing mode.
    Type: Grant
    Filed: July 2, 2014
    Date of Patent: December 20, 2016
    Assignees: STMICROELECTRONICS ASIA PACIFIC PTE LTD, STMICROELECTRONICS S.R.L.
    Inventors: Kien Beng Tan, Ernesto Lasalandra, Tommaso Ungaretti, Yannick Guedon, Dianbo Guo, Paolo Angelini, Giovanni Carlo Tripoli
  • Patent number: 9389256
    Abstract: Capacitance sensing circuits and methods are provided. The capacitance sensing circuit includes a capacitance-to-voltage converter configured to receive a signal from a capacitance to be sensed and to provide an output signal representative of the capacitance, an output chopper configured to convert the output signal of the capacitance-to-voltage converter to a sensed voltage representative of the capacitance to be sensed, an analog accumulator configured to accumulate sensed voltages during an accumulation period of NA sensing cycles and to provide an accumulated analog value, an amplifier configured to amplify the accumulated analog value, and an analog-to-digital converter configured to convert the amplified accumulated analog value to a digital value representative of the capacitance to be sensed. The analog accumulator may include a low pass filter having a frequency response to filter wideband noise.
    Type: Grant
    Filed: December 18, 2012
    Date of Patent: July 12, 2016
    Assignees: STMicroelectronics Asia Pacific Pte Ltd, STMicroelectronics S.r.l.
    Inventors: Paolo Angelini, Giovanni Carlo Tripoli, Ernesto Lasalandra, Tommaso Ungaretti, Kien Beng Tan, Yannick Guedon, Dianbo Guo, Sze-Kwang Tan
  • Patent number: 9235300
    Abstract: Accumulators that operate to fully or partially remove noise from a signal, including removing noise inserted into the signal by the accumulator itself. In some embodiments, an accumulator may be operated in a sampling phase and a transfer phase each time the accumulator samples an input signal. In some such embodiments, an op-amp of an accumulation circuit of the accumulator may be auto-zeroed during some or all of the sampling phases of an accumulation period. In some embodiments in which the op-amp is auto-zeroed during some or all of the sampling phases, the accumulation circuit may include a holding capacitor that, during an auto-zeroing process, holds a value output by the op-amp during a prior transfer phase. Including such a holding capacitor in an accumulator may reduce a voltage that the op-amp output rises following the auto-zero process, which may reduce a bandwidth and noise of the accumulation circuit.
    Type: Grant
    Filed: March 29, 2013
    Date of Patent: January 12, 2016
    Assignees: STMicroelectronics Asia Pacific Pte Ltd, STMicroelectronics S.r.l.
    Inventors: Paolo Angelini, Yannick Guedon, Ming Zi Zhu
  • Patent number: 9128573
    Abstract: Capacitance sensing circuits and methods are provided. The capacitance sensing circuit includes a capacitance-to-voltage converter configured to receive a signal from a capacitance to be sensed and to provide an output signal representative of the capacitance, an output chopper configured to convert the output signal of the capacitance-to-voltage converter to a sensed voltage representative of the capacitance to be sensed, an analog accumulator configured to accumulate sensed voltages during an accumulation period of NA sensing cycles and to provide an accumulated analog value, an amplifier configured to amplify the accumulated analog value, and an analog-to-digital converter configured to convert the amplified accumulated analog value to a digital value representative of the capacitance to be sensed. The analog accumulator may include a low pass filter having a frequency response to filter wideband noise.
    Type: Grant
    Filed: September 14, 2012
    Date of Patent: September 8, 2015
    Assignees: STMicroelectronics S.r.l.;, STMicroelectronics Asia Pacific Pte Ltd
    Inventors: Paolo Angelini, Giovanni Carlo Tripoli, Ernesto Lasalandra, Tommaso Ungaretti, Kien Beng Tan, Yannick Guedon, Dianbo Guo, Sze-Kwang Tan
  • Patent number: 9106208
    Abstract: A band-pass filter made up by an operational amplifier and by an input circuit. The input circuit is formed by a capacitive filtering element, connected to the input of the operational amplifier; a coupling switch, coupled between an input node and the capacitive filtering element; a capacitive sampling element, coupled between the input of the filter and the input node; and a sampling switch, coupled between the input node and a reference-potential line. The coupling switch and the input sampling switch close in phase opposition according to a succession of undesired components sampling and sensing steps, so that the capacitive sampling element forms a sampler for sampling the undesired component in the undesired components sampling step, in the absence of the component of interest, and forms a subtractor of the undesired components from the input signal in the sensing step.
    Type: Grant
    Filed: June 26, 2013
    Date of Patent: August 11, 2015
    Assignee: STMicroelectronics S.r.l.
    Inventors: Andrea Visconti, Luciano Prandi, Carlo Caminada, Paolo Angelini
  • Publication number: 20150145801
    Abstract: Capacitance sensing circuits and methods are provided. The capacitance sensing circuit includes a capacitance-to-voltage converter configured to receive a signal from a capacitance to be sensed and to provide an output signal representative of the capacitance, an output chopper configured to convert the output signal of the capacitance-to-voltage converter to a sensed voltage representative of the capacitance to be sensed, an analog accumulator configured to accumulate sensed voltages during an accumulation period of NA sensing cycles and to provide an accumulated analog value, an amplifier configured to amplify the accumulated analog value, and an analog-to-digital converter configured to convert the amplified accumulated analog value to a digital value representative of the capacitance to be sensed. The analog accumulator may include a low pass filter having a frequency response to filter wideband noise.
    Type: Application
    Filed: September 14, 2012
    Publication date: May 28, 2015
    Applicants: STMicroelectronics Asia Pacific Pte. Ltd., STMicroelectronics S.r.I.
    Inventors: Paolo Angelini, Giovanni Carlo Tripoli, Ernesto Lasalandra, Tommaso Ungaretti, Kien Beng Tan, Yannick Guedon, Dianbo Guo, Sze-Kwang Tan
  • Publication number: 20150082856
    Abstract: An integrated sensor device including a first die, housing a sensor element to detect a quantity external to the sensor device and transduce the external quantity into an electrical sensing signal; a second die mechanically coupled to the first die so that the first and second dies are stacked on one another along one and the same axis; and at least one heater of a resistive type integrated in the first die and/or in the second die, having a first conduction terminal and a second conduction terminal configured to couple respective first and second conduction terminals of a signal generator for causing an electric current to flow, in use, between the first and second conduction terminals of the heater and generate heat by the Joule effect. It is possible to carry out calibration in temperature of the sensor element.
    Type: Application
    Filed: September 26, 2014
    Publication date: March 26, 2015
    Inventors: Dario PACI, Francesco PROCOPIO, Carlo VALZASINA, Paolo ANGELINI, Francesco DIAZZI, Roberto Pio BAORDA, Danilo Karim KADDOURI
  • Patent number: 8976151
    Abstract: Capacitance sensing circuits and methods are provided. A dual mode capacitance sensing circuit includes a capacitance-to-voltage converter having an amplifier and an integration capacitance coupled between an output and an inverting input of the amplifier, and a dual mode switching circuit responsive to mutual mode control signals for a controlling signal supplied from a capacitive touch matrix to the capacitance-to-voltage converter in a mutual capacitance sensing mode and responsive to self mode control signals for controlling signals supplied from the capacitive touch matrix to the capacitance-to-voltage converter in a self capacitance sensing mode, wherein the capacitance sensing circuit is configurable for operation in the mutual capacitance sensing mode or the self capacitance sensing mode.
    Type: Grant
    Filed: December 18, 2012
    Date of Patent: March 10, 2015
    Assignees: STMicroelectronics Asia Pacific Pte Ltd, STMicroelectronics S.r.l.
    Inventors: Kien Beng Tan, Ernesto Lasalandra, Tommaso Ungaretti, Yannick Guedon, Dianbo Guo, Paolo Angelini, Giovanni Carlo Tripoli
  • Publication number: 20140312919
    Abstract: Capacitance sensing circuits and methods are provided. A dual mode capacitance sensing circuit includes a capacitance-to-voltage converter having an amplifier and an integration capacitance coupled between an output and an inverting input of the amplifier, and a switching circuit responsive to mutual mode control signals for a controlling signal supplied from a capacitive touch matrix to the capacitive to voltage converter in a mutual capacitance sensing mode and responsive to self mode control signals for controlling signals supplied from the capacitive touch matrix to the capacitance-to-voltage converter in a self capacitance sensing mode, wherein the capacitance sensing circuit is configurable for operation in the mutual capacitance sensing mode or the self capacitance sensing mode.
    Type: Application
    Filed: July 2, 2014
    Publication date: October 23, 2014
    Applicants: STMICROELECTRONICS ASIA PACIFIC PTE LTD, STMICROELECTRONICS S.R.L.
    Inventors: Kien Beng Tan, Ernesto Lasalandra, Tommaso Ungaretti, Yannick Guedon, Dianbo Guo, Paolo Angelini, Giovanni Carlo Tripoli
  • Publication number: 20140077823
    Abstract: Capacitance sensing circuits and methods are provided. The capacitance sensing circuit includes a capacitance-to-voltage converter configured to receive a signal from a capacitance to be sensed and to provide an output signal representative of the capacitance, an output chopper configured to convert the output signal of the capacitance-to-voltage converter to a sensed voltage representative of the capacitance to be sensed, an analog accumulator configured to accumulate sensed voltages during an accumulation period of NA sensing cycles and to provide an accumulated analog value, an amplifier configured to amplify the accumulated analog value, and an analog-to-digital converter configured to convert the amplified accumulated analog value to a digital value representative of the capacitance to be sensed. The analog accumulator may include a low pass filter having a frequency response to filter wideband noise.
    Type: Application
    Filed: December 18, 2012
    Publication date: March 20, 2014
    Applicants: STMicroelectronics Asia Pacific Pte. Ltd., STMicroelectronics S.r.I.
    Inventors: Paolo Angelini, Giovanni Carlo Tripoli, Ernesto Lasalandra, Tommaso Ungaretti, Kien Beng Tan, Yannick Guedon, Dianbo Guo, Sze-Kwang Tan
  • Publication number: 20140078096
    Abstract: Capacitance sensing circuits and methods are provided. A dual mode capacitance sensing circuit includes a capacitance-to-voltage converter having an amplifier and an integration capacitance coupled between an output and an inverting input of the amplifier, and a dual mode switching circuit responsive to mutual mode control signals for a controlling signal supplied from a capacitive touch matrix to the capacitance-to-voltage converter in a mutual capacitance sensing mode and responsive to self mode control signals for controlling signals supplied from the capacitive touch matrix to the capacitance-to-voltage converter in a self capacitance sensing mode, wherein the capacitance sensing circuit is configurable for operation in the mutual capacitance sensing mode or the self capacitance sensing mode.
    Type: Application
    Filed: December 18, 2012
    Publication date: March 20, 2014
    Applicants: STMicroelectronics Asia Pacific Pte. Ltd., STMicroelectronics S.r.I.
    Inventors: Kien Beng Tan, Ernesto Lasalandra, Tommaso Ungaretti, Yannick Guedon, Dianbo Guo, Paolo Angelini, Giovanni Carlo Tripoli